Abstract
The pursuit of di-coordinate boron radical has been continued for more than a half century, and their stabilization and structural characterization remains a challenge. Here we report the isolation and structural characterization of a linear di-coordinate boron radical cation, achieved by stabilizing the two reactive atomic orbitals of the central boron atom by two orthogonal π-donating and π-accepting functionalities. The electron deficient radical cation undergoes facile one-electron reduction to borylene and binds Lewis base to give heteroleptic tri-coordinate boron radical cation. The co-existence of half-filled and empty p orbitals at boron also allows the CO-regulated electron transfer to be explored. As the introduction of CO promotes the electron transfer from a tri-coordinate neutral boron radical to a boron radical cation, the removal of CO under vacuum furnishes the reverse electron transfer from borylene to yield a solution consisting of two boron radicals.
Cite
CITATION STYLE
Lin, Y. J., Liu, W. C., Liu, Y. H., Lee, G. H., Chien, S. Y., & Chiu, C. W. (2022). A linear Di-coordinate boron radical cation. Nature Communications, 13(1). https://doi.org/10.1038/s41467-022-34900-7
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.